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Modification of polycaprolactone in the presence of polyfunctional monomers by irradiation and its biodegradability

机译:在多官能单体存在下通过辐照改性聚己内酯及其生物降解性

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Crosslinked PCL was achieved by electron beam irradiation in the presence of polyfunctional monomers (PFM). Using the PFM to crosslink PCL reduces the irradiation dosage required for producing gel. The amount of gel formed was determined as a function of both the irradiation dose and PFM concentration. The higher the PFM concentration, the higher is the gel content. However, the amount of gel increases with irradiation dose to reach its maximum at 40 kGy and thereafter, it tends to level off. As the gel content of PCL increases, the tensile strength increases, but the elongation at break decreases. The crosslinked PCL has higher heat resistance compared with the uncrosslinked one. The enzymatic and soil burial degradation of uncrosslinked and crosslinked PCL was investigated. It was found that the biodegradation rate decreased and strongly depended not only on the degree of crosslinking of PCL but also on the degradation reaction conditions. The results obtained indicated that, by introducing crosslinking into PCL, its physical characters such as heat stability and mechanical properties were greatly improved, whilst, its ability to biodegrade was diminished.
机译:交联的PCL是在多官能单体(PFM)的存在下通过电子束照射实现的。使用PFM交联PCL可减少生产凝胶所需的辐射剂量。确定形成的凝胶的量与辐射剂量和PFM浓度两者的函数。 PFM浓度越高,凝胶含量越高。但是,凝胶量随照射剂量的增加而增加,在40 kGy时达到最大值,此后趋于平稳。随着PCL凝胶含量的增加,抗张强度增加,但断裂伸长率降低。与未交联的PCL相比,交联的PCL具有更高的耐热性。研究了未交联和交联的PCL的酶降解和土壤埋藏降解。发现生物降解速率降低并且不仅取决于PCL的交联度而且还取决于降解反应条件。所得结果表明,通过将交联引入PCL中,其物理性质如热稳定性和机械性能大大改善,同时其生物降解能力降低。

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